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Archès Lab
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    • Post-processing and surface functionalization
    • Shape control in solid state additive manufacturing
    • Geometrical heterogeneity
    • Microstructural Heterogeneity
    • Chemical Heterogeneity
  • Facilities
  • News
  • Theses proposals
  • Contact Us
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  • Home
  • Team
  • Research
    • Post-processing and surface functionalization
    • Shape control in solid state additive manufacturing
    • Geometrical heterogeneity
    • Microstructural Heterogeneity
    • Chemical Heterogeneity
  • Facilities
  • News
  • Theses proposals
  • Contact Us

Research

Our Research Mission

At Archès we implement theoretical, numerical and experimental approaches for design, development, characterization and deployment of multifunctional architected heterogeneous structures for various applications including aerospace, automotive and biomedical.

Our research is multidisciplinary and focuses on the following key research themes:

Chemical heterogeneity

Microstructural heterogeneity

Geometrical heterogeneity

Shape control in solid state additive manufacturing

Post-processing and surface functionalization

Recent publications

  • High-Fidelity Modeling of Cold Spray: Improved Constitutive Material Model and Nonlocal Mesh Sensitivity Mitigation
    High-Fidelity Modeling of Cold Spray: Improved Constitutive Material Model and Nonlocal Mesh Sensitivity Mitigation
    April 29, 2026/
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  • Extending artificial-intelligence-assisted single bead geometry prediction to multi-bead interaction in fused granulate fabrication
    Extending artificial-intelligence-assisted single bead geometry prediction to multi-bead interaction in fused granulate fabrication
    April 20, 2026/
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  • Integrating computational fluid dynamics and artificial intelligence for predicting in-flight thermo-kinetic properties in cold spray
    Integrating computational fluid dynamics and artificial intelligence for predicting in-flight thermo-kinetic properties in cold spray
    March 30, 2026/
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  • Inverse Multi-Objective Design of Three-Dimensional Plate-Based Heterogeneous Mechanical Metamaterials
    Inverse Multi-Objective Design of Three-Dimensional Plate-Based Heterogeneous Mechanical Metamaterials
    January 26, 2026/
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